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The objective of this workshop was to examine the nature of plasma membrane electron transport and how this electron transport contributes to growth of cells. The workshop came at a time when the study of the plasma membrane oxidoreductase activity was beginning to attract more widespread attention from researchers working with both plants and animals. The rapid response of c fos and c myc Proto-oncogene to stimulation of plasma membrane redox activity by external oxidants under scores a potential role of plasma membrane oxidoreductases in growth control. Other experiments with isolated endosomes in dicate emerging roles in endocytosis and lytic processes. Primary attention was focused on tr...
Macromolecules Regulating Growth and Development documents the proceedings of the 30th Symposium of the Society for Developmental Biology, held at the University of Washington in Seattle, June 17-19, 1971. The contributions made by researchers at the symposium are organized into three parts. Part I deals with regulatory factors in the selective growth of mammalian cells. It includes papers on the role of the cell surface in growth and transformation; the epidermal growth factor; and the role in regulation of tumor growth. Part II examines the formation and organization of plant cell walls and the plasma membrane. It presents studies on the origin and growth of cell surface components; synthesis and secretion of proteins in plant cells; and lipids and membrane structure. Part III deals with the organization and expression of genetic information. The contributions in this section include organization of DNA and proteins in mammalian chromosomes; total synthesis of transfer RNA genes; and biosynthesis of bacterial ribosomes.
Scientific progress hinges on continual discovery and the extension of previous discoveries. The important series of volumes Discoveries in Plant Biology is specially compiled to provide a microcosmic atlas of the landmark discoveries that span the breadth of plant biology. Written by renowned plant biologists, the papers describe how classic discoveries were made and how they have served as the basis for subsequent breakthroughs.The 24 chapters in this third volume describe discoveries which contribute to the foundations of modern plant biology. The contributors, many of whom personally lit the way, bring readers back in time as if on a journey to retrace the paths and rethink the ideas they followed. These guided tours on how to decipher the natural laws will lead to an appreciation of the development of each field from simple concepts to an advanced multidisciplinary field of today. This volume will be of special interest to botanists, biochemists, plant physiologists and geneticists, and of general interest to those who are still fascinated by how discoveries are made.